CN101793973A - While-drilling electric method - Google Patents
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- CN101793973A CN101793973A CN 201010109321 CN201010109321A CN101793973A CN 101793973 A CN101793973 A CN 101793973A CN 201010109321 CN201010109321 CN 201010109321 CN 201010109321 A CN201010109321 A CN 201010109321A CN 101793973 A CN101793973 A CN 101793973A
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Abstract
The invention discloses a while-drilling electric method, which involves a power supply electrode A, a power supply electrode B, and a ground surface detection system, wherein the power supply electrode A is an electrode, of which the depth gradually changes from the ground surface to the underground or from the underground to the ground surface and which supplies power at a preset time interval, and is a constantly drilling drill stem of a drill or a drill stem, of which the depth constantly varies in hoisting and drilling processes of the drill, of the drill; the power supply electrode B is an electrode fixed underground and is an electrode inserted underground or a sleeve pipe placed in an in-completion well or a cable arranged in the well in which the sleeve pipe is not placed; and the ground surface detection system is arranged on the ground surface, and when an observation target well is a straight well, adopts a radial arrangement structure using the observation target well as a center, and the included angle between each two radioactive lines and the number and distance between the measurement points in each radioactive line are determined according to the requirements of observation precision and the sensitivity of the instruments. The method can improve the intensity of the current supplied to a target layer and also improve the accuracy and resolution of the detection of the target layer.
Description
Technical field
The present invention relates to a kind of resistivity prospecting technology.Particularly relate to a kind of While-drilling electric method that can accurately measure the different depth structure of geological body.
Background technology
In resource exploration, it is very important to obtain underground electrical property feature in exploratory area and structure construction information.Can distinguish size, locus and the attached state of depositing of the detection of a target by the electrical structure tectonic information,, can distinguish that what the detection of a target is or contains what mineral by electrical property feature information.Therefore, how obtaining underground electrical property feature accurately in exploratory area and structure construction information is the problem that industry is extremely paid close attention to, and also is problem demanding prompt solution simultaneously.Electrical method be one be used for fossil class mineral reserve detection such as oil, rock gas, coal and metal, nonmetal mineral reserve are surveyed common technology.By its detection mode and signal excitation mode multiple classification can be arranged.
At present, in order to obtain underground electrical property feature in exploratory area and structure construction information, the resistivity prospecting technology of artificial field source commonly used can be divided into following four classes: the first kind is an aeroelectrical method, and it adopts the mode that receives on the exactor aboard to work; Second class is the controllable source electrical method, and it adopts the mode that excites ground to receive on ground to work; The 3rd class is a well ground electrical method, and the mode that it adopts well casing to excite ground to receive is worked; The 4th class is an electrical method between well, and it adopts and excites the mode that receives in the drilling well to work in drilling well.The resistivity prospecting technology exploration principle of the artificial field source of above-mentioned four classes is similar, and method of work is different, and the exploration ability respectively has characteristics.
Aeroelectrical method and ground controllable source electrical method are that energy loss is very big in the communication process by the primary field that the excites propagation that faces down through ground; After arriving objective body, in objective body, produce secondary field, secondary field is propagated earthward again, and same, energy loses in a large number in the communication process.This shows to have only that scale is big, the tangible objective body of electrical property difference just might be detected.Therefore, aeroelectrical method and ground controllable source electrical method resolution are not high, and multi-solution is more serious.
Electrical method adopts receive mode work in the excitation well in well between well, and excitaton source and receiving trap are near objective body, and wave field energy loss in communication process is little, and therefore, electrical method resolution is higher between well, and multi-solution is less.But, because the influence of sleeve pipe and the restriction of multiple factor, cause that electrical method is difficult for using between well in the reality exploration.
Well ground electrical method adopts well casing to excite primary field, and excitaton source produces secondary field near objective body in objective body, and secondary field is propagated earthward again, and energy loss is very big in the communication process.Relative ground controllable source electrical method, energy has only loss paer pass in the wave field communication process, and therefore, well ground electrical method resolution is higher relatively, and multi-solution is few relatively.But sleeve pipe is fixed, and malleable mode of excitation has not also limited the detectivity of well ground electrical method.
So far most of electrical methods all are to measure after arranging powering mode and receiving mode earlier, also can change powering mode certainly and receiving mode is measured again.The signal excitation mode is mostly on the face of land, and well ground electrical method is also just put signal excitation to a certain zone of interest position.
Existing electrical method technology will be measured the method for different depth geologic body electrical information, all is the distance that constantly changes on the face of land between electrodes of A B, or the frequency of change power supply is to reach the purpose of depth measurement.
Can fix the power supply B utmost point, and make power supply A extremely constantly be lowered to different depth, and the electric field that when the profound degree of the different A of ground survey is powered, produces continuously? if can realize, just can be implemented in purpose stratum in-line power, the purpose that the face of land is measured.Also can reduce the influence that face of land power supply station produces.
Summary of the invention
Technical matters to be solved by this invention is, a kind of purpose stratum in-line power that is implemented in is provided, and accurately measures the While-drilling electric method of different depth structure of geological body on the face of land.
The technical solution adopted in the present invention is: a kind of While-drilling electric method, comprise: the electrodes of A utmost point, the face of land detection system of the transmitting electrode B utmost point and reception electric signal, the described electrodes of A utmost point, be by ground to underground or by underground on the ground changing the degree of depth gradually and electrode that power at interval by setting-up time; The described transmitting electrode B utmost point is the electrode that is fixed under the face of land; Described face of land detection system is laid in the face of land.
The described electrodes of A utmost point is to adopt drilling rod that rig constantly creeps into as the electrodes of A utmost point, or rig in carrying brills, going down process constantly the drilling rod of the change degree of depth as the electrodes of A utmost point.
The described electrodes of A utmost point is to make electrode constantly change the degree of depth as the electrodes of A utmost point with cable in uncased wellbore.
The described transmitting electrode B utmost point, be insert with an electrode underground as the transmitting electrode B utmost point, or being lowered to sleeve pipe in drilled well, or to cable not being set as the transmitting electrode B utmost point under the cased borehole as the transmitting electrode B utmost point.
The described detection system that is arranged on the face of land is: when the observed object well that the electrodes of A utmost point is set is straight well, with the observed object well is the center, adopt radial laying structure, face mutually two between radioactive ray angle and every radioactive ray on the quantity and the distance of measuring point depend on the requirement of accuracy of observation and the sensitivity of instrument.
The described detection system that is arranged on the face of land is: when the observed object well that the electrodes of A utmost point is set is inclined shaft, surface projection point with emphasis zone of interest middle part design well is the center, adopt radial laying structure, face mutually two between radioactive ray angle and every radioactive ray on the quantity and the distance of measuring point depend on the requirement of accuracy of observation and the sensitivity of instrument.
The described detection system that is arranged on the face of land is: when the observed object well that the electrodes of A utmost point is set is straight well, with the observed object well is the center, the employing matrix-style is laid, and faces the quantity of measuring point MN on two surveys line, the every survey line and requirement and the instrumental sensitivity that distance depends on accuracy of observation mutually.
The described detection system that is arranged on the face of land is: when the observed object well that the electrodes of A utmost point is set is inclined shaft, surface projection point with emphasis zone of interest middle part design well is that the center adopts matrix-style to lay, and faces the quantity of measuring point MN on two surveys line, the every survey line and requirement and the instrumental sensitivity that distance depends on accuracy of observation mutually.
The distance of described observation station is equidistant, or not equidistant.
The distance of described observation station is when equidistant, and decentering spacing far away more is big more.
While-drilling electric method of the present invention, with the drilling rod that constantly creeps into as the A utmost point of power supply and with the time interval power supply of a setting, the face of land is measured continuously with radial or matrix recording geometry, to be obtained from that zone of interest infeeds electric current and the electrical information that produces reduces the influence that face of land power supply produces.Improve the strength of current that zone of interest infeeds, just can improve the accuracy that zone of interest is surveyed accordingly, thereby improve the resolution of geologic body.
Description of drawings
Fig. 1 is the structural representation of the face of land of the present invention detection system radioactivity wiring;
Fig. 2 is the structural representation of the face of land of the present invention detection system matrix wiring;
Fig. 3 is an electrodes of A utmost point drilling rod electric power-feeding structure synoptic diagram of the present invention;
Fig. 4 is a transmitting electrode B utmost point sleeve pipe electric power-feeding structure synoptic diagram of the present invention.
Among the figure:
A: electrodes of A utmost point B: the transmitting electrode B utmost point
M: measuring point N: measuring point
Am, m, n, l: spacing E: receiving electrode
F: insulating power supply G: instrument truck
Embodiment
Below in conjunction with embodiment and accompanying drawing While-drilling electric method of the present invention is made a detailed description.
As shown in Figure 1, While-drilling electric method of the present invention comprises: the electrodes of A utmost point, the face of land detection system of the transmitting electrode B utmost point and reception electric signal.
The described electrodes of A utmost point, be by ground to underground or by underground on the ground changing the degree of depth gradually and electrode that power at interval by setting-up time, as shown in Figure 3, can be to adopt drilling rod that rig constantly creeps into as the electrodes of A utmost point, or rig in carrying brills, going down process constantly the drilling rod of the change degree of depth as the electrodes of A utmost point.Described electrodes of A extremely can also be to make electrode constantly change the degree of depth with cable in uncased wellbore to be used as the electrodes of A utmost point.
The described transmitting electrode B utmost point is the electrode that is fixed under the face of land.The described transmitting electrode B utmost point, as shown in Figure 4, be insert with an electrode underground as the transmitting electrode B utmost point, or to be lowered to sleeve pipe in drilled well as the transmitting electrode B utmost point, or to cable not being set as the transmitting electrode B utmost point under the cased borehole, underground to guarantee that electric current infeeds.
Described face of land detection system is laid in the face of land.As shown in Figure 1, when the observed object well that the electrodes of A utmost point is set is straight well, the described detection system that is arranged on the face of land is: with the observed object well is the center, adopt radial laying structure, face mutually two between radioactive ray angle and quantity and the distance of the measuring point MN on every radioactive ray depend on the requirement of accuracy of observation and the sensitivity of instrument.The angle that is specially between adjacent two radioactive ray is 1 °~60 °, and the quantity of measuring point MN is 3~30 on every radioactive ray, and the distance of measuring point MN is 10~1000 meters on every radioactive ray.
When the observed object well that the electrodes of A utmost point is set is inclined shaft, the described detection system that is arranged on the face of land is: the surface projection point with emphasis zone of interest middle part design well is the center, adopt radial laying structure, face mutually two between radioactive ray angle and every radioactive ray on quantity and the distance of observation station MN depend on the requirement of accuracy of observation and the sensitivity of instrument.The angle that is specially between adjacent two radioactive ray is 1 °~60 °, and the quantity of measuring point MN is 3~30 on every radioactive ray, and the distance of the measuring point MN on every radioactive ray is 10~1000 meters.
As shown in Figure 2, the described detection system that is arranged on the face of land can also be: when the observed object well that the electrodes of A utmost point is set is straight well, with the observed object well is the center, the employing matrix-style is laid, and faces the quantity of measuring point MN on two surveys line, the every survey line and requirement and the instrumental sensitivity that distance depends on accuracy of observation mutually.The distance that is specially between adjacent two surveys line is 10~1000 meters, and the quantity of measuring point MN is 3~100 on every survey line, and the distance of measuring point MN is 10~1000 meters on every survey line.
When the observed object well that the electrodes of A utmost point is set is inclined shaft, the described detection system that is arranged on the face of land is: the surface projection point with emphasis zone of interest middle part design well is that the center adopts matrix-style to lay, and faces the quantity of measuring point MN on two surveys line, the every survey line and requirement and the instrumental sensitivity that distance depends on accuracy of observation mutually.The distance that is specially between adjacent two surveys line is 10~1000 meters, and the quantity of measuring point MN is 3~100 on every survey line, and the distance of measuring point MN is 10~1000 meters on every survey line.
The distance of observation station MN described in the present invention can be equidistant, also can be not equidistant.Decentering spacing far away more can be not big more when equidistant.
But used supply current direct current among the present invention, also time domain or square wave current frequency field alternating current.
Because While-drilling electric method of the present invention is as the electrodes of A utmost point with the drilling rod that constantly creeps into, at the good corresponding detecting system of face of land cloth and the transmitting electrode B utmost point, with constantly creeping into of rig, in the generation of the electrodes of A utmost point,, the electric degree of depth constantly increased, infeed electric current and power with the dissimilar time interval, face of land detection system is measured continuously.Like this, the electrodes of A utmost point is deep into the geologic body in-line power, has overcome the influence of a lot of shortcomings of face of land power supply, has improved the strength of current that zone of interest infeeds, and has put forward the accuracy that high zone of interest electrical information is surveyed accordingly, thereby has improved the resolution of geologic body.
Provide a specific embodiment below in conjunction with Fig. 1:
Recording geometry design and laying: for straight well, with master center, well point, adopt radial laying recording geometry, face mutually two between radioactive ray angle and every radioactive ray on the quantity of measuring point MN and distance depend on that surveying instrument can measure measuring point quantity, sensitivity and measurement requirement simultaneously.The CDMA electrical prospecting apparatus of producing with Tianjin Ingchi Optoelectronic Technology Inc. is an example, and this instrument now can be measured (39 * 2) 78 measuring points simultaneously.On-the-spot a bite well of having implemented has adopted 60 ° of angles, the distance at measuring point M and center is 50 meters on every line, measuring point is 5 on the every line, and 50 meters of measuring point spacings are measured the current potential data between 50 and 100 meters, 50 and 150 meters, 150 and 200 meters, 150 and 250 meters of every survey line.Surveying altogether has 6 direction of measurement, 4 measured values of each direction, measures and is spaced apart 2 minutes.Another mouthful well has also adopted 60 ° of angles, the distance at measuring point M and center is 50 meters on every line, measuring point is 7 on the every line, 60 meters of measuring point spacings, measurement are the current potential data between 50 and 110 meters, 110 and 170 meters, 170 and 230 meters, 230 and 290 meters, 290 and 350 meters, 350 and 410 meters of every survey line.Surveying altogether has 6 direction of measurement, and 6 measured values of each direction are measured and are spaced apart 2 minutes.Each measurement point adopts copper electrode to hammer into underground 20 to 30 centimetres, guarantees that contact is good.Adopt signal wire to be connected to instrument.
The laying of the electrodes of A utmost point and the transmitting electrode B utmost point: as the electrodes of A utmost point, the power supply line that comes out on the instrument is directly received the rig bottom and is got final product with boring to drive on the metalwork that rotating disk is connected with the drilling rod that constantly creeps into.The transmitting electrode B utmost point is then inserting electrode greater than the distant place of getting big zone of interest depth value, adopts to be wired on the instrument.On-the-spot a bite well of having implemented because of zone of interest concentration less than 350 meters, the distance of B pole span well is 800 meters.The zone of interest concentration of another mouthful well is less than 1900 meters, and the distance of B pole span well is 2000 meters
Measure: the startup instrument carried out continuous coverage after all electrodes all were connected to the instrument correspondence position.The CDMA electrical prospecting apparatus adopts about 2 minutes one-periods, finishes once power supply and measuring process, and one-period connects one-period to carry out.The starting point of measuring also can just be carried out from being drilled into a certain degree of depth when this well spuds in.
Data preparation: record the electrical information that records continuously, carry out that the degree of depth is corresponding determines with the data of guaranteeing to measure the time corresponding and the degree of depth to be arranged with time and different moment drilling tool degree of depth data.
Claims (10)
1. While-drilling electric method, comprise: the electrodes of A utmost point, the face of land detection system of the transmitting electrode B utmost point and reception electric signal is characterized in that, the described electrodes of A utmost point, be by ground to underground or by underground on the ground changing the degree of depth gradually and electrode that power at interval by setting-up time; The described transmitting electrode B utmost point is the electrode that is fixed under the face of land; Described face of land detection system is laid in the face of land.
2. While-drilling electric method according to claim 1 is characterized in that, the described electrodes of A utmost point is to adopt drilling rod that rig constantly creeps into as the electrodes of A utmost point, or rig in carrying brills, going down process constantly the drilling rod of the change degree of depth as the electrodes of A utmost point.
3. While-drilling electric method according to claim 1 is characterized in that, the described electrodes of A utmost point is to make electrode constantly change the degree of depth as the electrodes of A utmost point with cable in uncased wellbore.
4. While-drilling electric method according to claim 1, it is characterized in that the described transmitting electrode B utmost point is to insert underground as the transmitting electrode B utmost point with an electrode, or being lowered to sleeve pipe in drilled well, or to cable not being set as the transmitting electrode B utmost point under the cased borehole as the transmitting electrode B utmost point.
5. While-drilling electric method according to claim 1, it is characterized in that, the described detection system that is arranged on the face of land is: when the observed object well that the electrodes of A utmost point is set is straight well, with the observed object well is the center, adopt radial laying structure, face mutually two between radioactive ray angle and every radioactive ray on the quantity and the distance of measuring point (MN) depend on the requirement of accuracy of observation and the sensitivity of instrument.
6. While-drilling electric method according to claim 1, it is characterized in that, the described detection system that is arranged on the face of land is: when the observed object well that the electrodes of A utmost point is set is inclined shaft, surface projection point with emphasis zone of interest middle part design well is the center, adopt radial laying structure, face mutually two between radioactive ray angle and every radioactive ray on the quantity and the distance of measuring point (MN) depend on the requirement of accuracy of observation and the sensitivity of instrument.
7. While-drilling electric method according to claim 1, it is characterized in that, the described detection system that is arranged on the face of land is: when the observed object well that the electrodes of A utmost point is set is straight well, with the observed object well is the center, the employing matrix-style is laid, and faces the quantity of measuring point MN on two surveys line, the every survey line and requirement and the instrumental sensitivity that distance depends on accuracy of observation mutually.
8. While-drilling electric method according to claim 1, it is characterized in that, the described detection system that is arranged on the face of land is: when the observed object well that the electrodes of A utmost point is set is inclined shaft, surface projection point with emphasis zone of interest middle part design well is that the center adopts matrix-style to lay, and faces the quantity of measuring point MN on two surveys line, the every survey line and requirement and the instrumental sensitivity that distance depends on accuracy of observation mutually.
9. While-drilling electric method according to claim 1 is characterized in that, the distance of described observation station (MN) is equidistant, or not equidistant.
10. While-drilling electric method according to claim 9 is characterized in that, the distance of described observation station (MN) is when equidistant, and decentering spacing far away more is big more.
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Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
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CN101942993A (en) * | 2010-09-01 | 2011-01-12 | 大港油田集团有限责任公司 | Inter-well potential tomography imaging system and method while drilling |
CN103487836A (en) * | 2013-10-11 | 2014-01-01 | 钟世航 | Electrical prospecting multi-electrode multi-power supply unit system and prospecting method thereof |
CN106154337A (en) * | 2016-08-30 | 2016-11-23 | 中国电建集团贵阳勘测设计研究院有限公司 | Vertical induced polarization device and method for detecting shale stratum |
CN106646635A (en) * | 2016-12-26 | 2017-05-10 | 张鑫 | Modified line source resistivity continuous measurement method |
CN106950605A (en) * | 2017-04-24 | 2017-07-14 | 河南工程学院 | A kind of shallow-layer While-drilling electric method detection method and device |
CN110187398A (en) * | 2019-07-11 | 2019-08-30 | 中南大学 | A Multi-Electrode Detection Method for Finding Interwell Targets |
CN115327646A (en) * | 2022-08-22 | 2022-11-11 | 中国科学技术大学 | A three-dimensional electrical observation system combined with metal structures in earth-rock dams |
CN118276180A (en) * | 2024-06-04 | 2024-07-02 | 山东大学 | Long-power-induced polarization water exploration device and method for tunnel based on drilling rig |
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Cited By (12)
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CN101942993A (en) * | 2010-09-01 | 2011-01-12 | 大港油田集团有限责任公司 | Inter-well potential tomography imaging system and method while drilling |
CN103487836A (en) * | 2013-10-11 | 2014-01-01 | 钟世航 | Electrical prospecting multi-electrode multi-power supply unit system and prospecting method thereof |
CN103487836B (en) * | 2013-10-11 | 2016-06-29 | 钟世航 | The multiple power supply unit system of multi-electrode of a kind of electrical prospecting and exploitation method thereof |
CN106154337A (en) * | 2016-08-30 | 2016-11-23 | 中国电建集团贵阳勘测设计研究院有限公司 | Vertical induced polarization device and method for detecting shale stratum |
CN106646635A (en) * | 2016-12-26 | 2017-05-10 | 张鑫 | Modified line source resistivity continuous measurement method |
CN106950605A (en) * | 2017-04-24 | 2017-07-14 | 河南工程学院 | A kind of shallow-layer While-drilling electric method detection method and device |
CN106950605B (en) * | 2017-04-24 | 2023-07-18 | 河南工程学院 | A shallow electrical while drilling detection method and device |
CN110187398A (en) * | 2019-07-11 | 2019-08-30 | 中南大学 | A Multi-Electrode Detection Method for Finding Interwell Targets |
CN115327646A (en) * | 2022-08-22 | 2022-11-11 | 中国科学技术大学 | A three-dimensional electrical observation system combined with metal structures in earth-rock dams |
CN115327646B (en) * | 2022-08-22 | 2025-02-28 | 中国科学技术大学 | A three-dimensional electrical observation system combined with metal structures in earth-rock dams |
CN118276180A (en) * | 2024-06-04 | 2024-07-02 | 山东大学 | Long-power-induced polarization water exploration device and method for tunnel based on drilling rig |
CN118276180B (en) * | 2024-06-04 | 2024-08-09 | 山东大学 | Tunnel long power supply excitation polarization water detection device and method based on drilling rig carrying while drilling |
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